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电压感应机制在由相反电压门控的离子通道中是保守的。

Voltage-sensing mechanism is conserved among ion channels gated by opposite voltages.

作者信息

Männikkö Roope, Elinder Fredrik, Larsson H Peter

机构信息

Department of Neuroscience, The Nobel Institute for Neurophysiology, Karolinska Institutet, SE-171 77 Stockholm, Sweden.

出版信息

Nature. 2002 Oct 24;419(6909):837-41. doi: 10.1038/nature01038.

Abstract

Hyperpolarization-activated cyclic-nucleotide-gated (HCN) ion channels are found in rhythmically firing cells in the brain and in the heart, where the cation current through HCN channels (called I(h) or I(f)) causes these cells to fire repeatedly. These channels are also found in non-pacing cells, where they control resting membrane properties, modulate synaptic transmission, mediate long-term potentiation, and limit extreme hyperpolarizations. HCN channels share sequence motifs with depolarization-activated potassium (Kv) channels, such as the fourth transmembrane segment S4. S4 is the main voltage sensor of Kv channels, in which transmembrane movement of S4 charges triggers the opening of the activation gate. Here, using cysteine accessibility methods, we investigate whether S4 moves in an HCN channel. We show that S4 movement is conserved between Kv and HCN channels, which indicates that S4 is also the voltage sensor in HCN channels. Our results suggest that a conserved voltage-sensing mechanism operates in the oppositely voltage-gated Kv and HCN channels, but that there are different coupling mechanisms between the voltage sensor and activation gate in the two different channels.

摘要

超极化激活的环核苷酸门控(HCN)离子通道存在于大脑和心脏中有节律放电的细胞中,通过HCN通道的阳离子电流(称为I(h)或I(f))使这些细胞反复放电。这些通道也存在于非起搏细胞中,在那里它们控制静息膜特性、调节突触传递、介导长时程增强并限制极端超极化。HCN通道与去极化激活的钾(Kv)通道具有共同的序列基序,如第四跨膜段S4。S4是Kv通道的主要电压感受器,其中S4电荷的跨膜移动触发激活门的打开。在此,我们使用半胱氨酸可及性方法研究S4在HCN通道中是否移动。我们表明,S4的移动在Kv通道和HCN通道之间是保守的,这表明S4也是HCN通道中的电压感受器。我们的结果表明,一种保守的电压传感机制在电压门控方向相反的Kv通道和HCN通道中起作用,但在这两种不同的通道中,电压感受器与激活门之间存在不同的偶联机制。

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